Natural gas sweetening using tailored ionic liquid-methanol mixed solvent with selective removal of H2S and CO2

Очистка природного газа с использованием специально подобранного смешанного растворителя на основе ионной жидкости и метанола с селективным удалением H2S и CO2
Yuqiu Chen, Georgios M. Kontogeorgis, Xiaodong Liang, Yang Lei, Lei Du, Xinyan Liu, Haoshui Yu
2023-10-05

1-methyl pyridinium trifluoroacetate ([C1OHPy][TFA])computer-aided design of ionic liquidsionic liquid-methanol mixed solventnatural gas sweetening energy and cost savingsselective removal of H2S and CO2
Natural gas is often preferred in various energy applications due to its many advantages over conventional fossil fuels such as oil and coal. However, the removal of pollutants from natural gas, particularly hydrogen sulfide (H2S) and carbon dioxide (CO2), requires complex treatment strategies, significantly impacting the cost of natural gas production. In this work, we propose a mixed solvent combining ionic liquid (IL) and methanol, which can selectively and simultaneously remove H2S and CO2 by customizing the IL structure and its ratio in the solvent. This purification process offers improved efficiency and energy savings compared to traditional methods. To determine the optimal IL structure in the mixed solvent, a computer-aided design method was employed. Through solving the formulated MINLP problem, the IL 1-methyl pyridinium trifluoroacetate ([C1OHPy][TFA]) was identified as having the highest affinity for H2S, making it suitable for use in the IL-methanol mixed solvent. Furthermore, the upgrading process of high-sulfur natural gas using the IL-methanol mixed solvent was simulated and evaluated, comparing it to the benchmark natural gas upgrading (Rectisol) process. The results demonstrate that the IL-methanol mixed solvent natural gas upgrading process achieved a 55.57 % power savings and reduced the annual total cost (TAC) by 23.90 % compared to the Rectisol process. These findings highlight the significant potential of our tailored IL-methanol mixed solvent in natural gas production.
1
A computer-aided design method solving a MINLP identified 1-methyl pyridinium trifluoroacetate ([C1OHPy][TFA]) as the IL with highest affinity for H2S.
2
A mixed solvent of ionic liquid (IL) and methanol can selectively and simultaneously remove H2S and CO2 from natural gas by customizing IL structure and solvent ratio.
3
Simulated upgrading of high-sulfur natural gas with the IL-methanol solvent was compared to the Rectisol benchmark process.
4
The IL-methanol mixed solvent process achieved 55.57% power savings relative to the Rectisol process.
5
The IL-methanol mixed solvent process reduced annual total cost (TAC) by 23.90% compared to the Rectisol process.
6
The proposed IL-methanol purification offers improved efficiency and energy savings over traditional natural gas sweetening methods.

Ionic liquid–methanol mixed solvent (specifically [C1OHPy][TFA] methanol blend) used for natural gas sweetening

Selective and simultaneous removal of H2S and CO2 from high-sulfur natural gas using the tailored IL–methanol mixed solvent, including performance metrics (power savings and total annual cost reduction) versus the Rectisol benchmark

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2023-10-05
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Yuqiu Chen
Georgios M. Kontogeorgis
Xiaodong Liang
Yang Lei
Lei Du
Xinyan Liu
Haoshui Yu
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